Progress in Molecular Nanoarchitectonics and Materials Nanoarchitectonics.

Progress in Molecular Nanoarchitectonics and Materials Nanoarchitectonics.
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DOI:
10.3390/molecules26061621
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发表时间:
2021-03-15
期刊:
Molecules (Basel, Switzerland)
影响因子:
--
通讯作者:
Ariga K
Ariga K
中科院分区:
其他
文献类型:
--
作者:
Ariga K

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尽管包括有机合成、高分子化学和材料科学在内的各种合成方法是功能材料生产的主要贡献者,但随着最近科学技术的发展,调节纳米级结构以获得更好的性能的重要性已经变得显而易见。因此,作为纳米科学的进步,必须创建一种从纳米级单元生产功能材料系统的新研究范式。这项任务被分配给一个新兴概念——纳米结构学,其目的是从纳米级单元组件生产功能材料和功能结构。这可以通过将纳米技术与有机化学、超分子化学、材料科学和生物相关科学等其他研究领域相结合来实现。在这篇综述文章中,纳米结构学的基础层面首先介绍了原子/分子级结构的形成以及从分子单元到功能材料的转换。然后,讨论了面向能源的应用和生物相关应用中两种典型的面向应用的纳米结构研究。最后,简要讨论了功能纳米材料发展的分子和材料纳米结构概念的未来方向。
Although various synthetic methodologies including organic synthesis, polymer chemistry, and materials science are the main contributors to the production of functional materials, the importance of regulation of nanoscale structures for better performance has become clear with recent science and technology developments. Therefore, a new research paradigm to produce functional material systems from nanoscale units has to be created as an advancement of nanoscale science. This task is assigned to an emerging concept, nanoarchitectonics, which aims to produce functional materials and functional structures from nanoscale unit components. This can be done through combining nanotechnology with the other research fields such as organic chemistry, supramolecular chemistry, materials science, and bio-related science. In this review article, the basic-level of nanoarchitectonics is first presented with atom/molecular-level structure formations and conversions from molecular units to functional materials. Then, two typical application-oriented nanoarchitectonics efforts in energy-oriented applications and bio-related applications are discussed. Finally, future directions of the molecular and materials nanoarchitectonics concepts for advancement of functional nanomaterials are briefly discussed.
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